4.5 Article

Proteome analysis of the farnesol-induced stress response in Aspergillus nidulans-The role of a putative dehydrin

Journal

JOURNAL OF PROTEOMICS
Volume 75, Issue 13, Pages 4038-4049

Publisher

ELSEVIER
DOI: 10.1016/j.jprot.2012.05.023

Keywords

Aspergillus nidulans; Farnesol; Dehydrin-like protein; 2D-differential gel electrophoresis

Funding

  1. Henkel AG Co. KGaA

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The isoprenoid alcohol farnesol represents a quorum-sensing molecule in pathogenic yeasts, but was also shown to inhibit the growth of many filamentous fungi. In order to gain a deeper insight into the antifungal activity of farnesol, we performed 2D-differential gel electrophoretic analysis (2D-DIGE) of Aspergillus nidulans exposed to farnesol. We observed an increased abundance of antioxidative enzymes and proteins involved in protein folding and the ubiquitin-mediated protein degradation. A striking finding was the strong up-regulation of a dehydrin-like protein (DlpA). Expression analyses suggested the involvement of DlpA in the cellular response to oxidative, osmotic and cold stress. In line with these data, we demonstrated that dlpA expression was regulated by the MAP kinase SakA/HogA. The generation of both a dlpA Tet(on) antisense RNA-producing A. nidulans strain (dlpA-inv) and a Delta dlpA deletion mutant indicated a role of DlpA in conidiation and stress resistance of dormant conidia against heat and ROS. Furthermore, the production of the secondary metabolite sterigmatocystin was absent in both strains dlpA-inv and Delta dlpA. Our results demonstrate the complexity of the farnesol-mediated stress response in A. nidulans and describe a farnesol-inducible dehydrin-like protein that contributes to the high tolerance of resting conidia against oxidative and heat stress. (c) 2012 Elsevier B.V. All rights reserved.

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